Santamaría David, Barrière Cédric, Cerqueira Antonio, Hunt Sarah, Tardy Claudine, Newton Kathryn, Cáceres Javier F, Dubus Pierre, Malumbres Marcos, Barbacid Mariano
Molecular Oncology Programme, Centro Nacional de Investigaciones Oncológicas, E-28029 Madrid, Spain.
Nature. 2007 Aug 16;448(7155):811-5. doi: 10.1038/nature06046.
Unicellular organisms such as yeasts require a single cyclin-dependent kinase, Cdk1, to drive cell division. In contrast, mammalian cells are thought to require the sequential activation of at least four different cyclin-dependent kinases, Cdk2, Cdk3, Cdk4 and Cdk6, to drive cells through interphase, as well as Cdk1 to proceed through mitosis. This model has been challenged by recent genetic evidence that mice survive in the absence of individual interphase Cdks. Moreover, most mouse cell types proliferate in the absence of two or even three interphase Cdks. Similar results have been obtained on ablation of some of the activating subunits of Cdks, such as the D-type and E-type cyclins. Here we show that mouse embryos lacking all interphase Cdks (Cdk2, Cdk3, Cdk4 and Cdk6) undergo organogenesis and develop to midgestation. In these embryos, Cdk1 binds to all cyclins, resulting in the phosphorylation of the retinoblastoma protein pRb and the expression of genes that are regulated by E2F transcription factors. Mouse embryonic fibroblasts derived from these embryos proliferate in vitro, albeit with an extended cell cycle due to inefficient inactivation of Rb proteins. However, they become immortal on continuous passage. We also report that embryos fail to develop to the morula and blastocyst stages in the absence of Cdk1. These results indicate that Cdk1 is the only essential cell cycle Cdk. Moreover, they show that in the absence of interphase Cdks, Cdk1 can execute all the events that are required to drive cell division.
诸如酵母之类的单细胞生物需要单一的细胞周期蛋白依赖性激酶Cdk1来驱动细胞分裂。相比之下,哺乳动物细胞被认为需要依次激活至少四种不同的细胞周期蛋白依赖性激酶Cdk2、Cdk3、Cdk4和Cdk6,以驱动细胞通过间期,还需要Cdk1来进行有丝分裂。最近的遗传学证据对这一模型提出了挑战,该证据表明小鼠在缺乏单个间期Cdk的情况下仍能存活。此外,大多数小鼠细胞类型在缺乏两种甚至三种间期Cdk的情况下仍能增殖。在敲除Cdk的一些激活亚基(如D型和E型细胞周期蛋白)时也获得了类似的结果。在此我们表明,缺乏所有间期Cdk(Cdk2、Cdk3、Cdk4和Cdk6)的小鼠胚胎能够进行器官发生并发育到妊娠中期。在这些胚胎中,Cdk1与所有细胞周期蛋白结合,导致视网膜母细胞瘤蛋白pRb磷酸化以及由E2F转录因子调控的基因表达。源自这些胚胎的小鼠胚胎成纤维细胞在体外能够增殖,尽管由于Rb蛋白失活效率低下导致细胞周期延长。然而,它们在连续传代时会变成永生细胞。我们还报告说,在缺乏Cdk1的情况下,胚胎无法发育到桑椹胚和囊胚阶段。这些结果表明Cdk1是唯一必需的细胞周期Cdk。此外,它们表明在缺乏间期Cdk的情况下,Cdk1可以执行驱动细胞分裂所需的所有事件。